Nanocrystalline alloys of immiscible in nature are emerging topics of interest for researchers due to better mechanical stability at high temperatures. Nanocrystalline Copper-Tantalum alloy is of particular interest for research exploration due to its high strength, limited solubility and high-temperature stability. In the present work, the mechanical properties of nanocrystalline 90/10 copper-tantalum (9Cu-Ta) alloy have been investigated using the molecular dynamics approach. Embedded atom method (EAM) of potential has been used to analyze the mechanical properties at high temperatures due to the high stability of EAM in molecular dynamic simulation. At high-temperature defects plays a very important role therefore a specific 9Cu-Ta nanos...
High density nanocrystalline copper produced by inert gas condensation was tested in tension. Displa...
Deformation in a microcomponent is often constrained by surrounding joined material making the compo...
The introduction of twin boundaries (TBs) within nanocrystalline grains has given scientists an oppo...
358-366Nanocrystalline alloys of immiscible in nature are emerging topics of interest for researcher...
<p>Nanostructured Cu–Ta alloys show promise as high-strength materials in part due to their limited ...
abstract: Nanocrystalline (NC) materials experience inherent microstructural instability when expose...
Nanocrystalline alloys have always fascinated researchers due to their enhanced properties as compar...
In the present work, stress relaxation tests, high-resolution transmission electron microscopy (HRTE...
Nanocrystalline metals are promising materials for applications that require outstanding strength an...
Fully dense, nanocrystalline tantalum (average grain size as small as ~40 nm) has been processed for...
Advancements in fabrication of immiscible alloy has allowed the development of high temperature stab...
In this research parallel molecular dynamics (MD) simulations have been performed to study the defor...
Recently, Cu–Au core–shell nanowires have been extensively used as conductors, nanocatalysts, and ae...
In the present paper, the size and strain rate effects on ultra-thin < 100 >/{100} Cu nanowi...
Abstract Atomistic simulations are capable of providing insights into physical mechanisms responsibl...
High density nanocrystalline copper produced by inert gas condensation was tested in tension. Displa...
Deformation in a microcomponent is often constrained by surrounding joined material making the compo...
The introduction of twin boundaries (TBs) within nanocrystalline grains has given scientists an oppo...
358-366Nanocrystalline alloys of immiscible in nature are emerging topics of interest for researcher...
<p>Nanostructured Cu–Ta alloys show promise as high-strength materials in part due to their limited ...
abstract: Nanocrystalline (NC) materials experience inherent microstructural instability when expose...
Nanocrystalline alloys have always fascinated researchers due to their enhanced properties as compar...
In the present work, stress relaxation tests, high-resolution transmission electron microscopy (HRTE...
Nanocrystalline metals are promising materials for applications that require outstanding strength an...
Fully dense, nanocrystalline tantalum (average grain size as small as ~40 nm) has been processed for...
Advancements in fabrication of immiscible alloy has allowed the development of high temperature stab...
In this research parallel molecular dynamics (MD) simulations have been performed to study the defor...
Recently, Cu–Au core–shell nanowires have been extensively used as conductors, nanocatalysts, and ae...
In the present paper, the size and strain rate effects on ultra-thin < 100 >/{100} Cu nanowi...
Abstract Atomistic simulations are capable of providing insights into physical mechanisms responsibl...
High density nanocrystalline copper produced by inert gas condensation was tested in tension. Displa...
Deformation in a microcomponent is often constrained by surrounding joined material making the compo...
The introduction of twin boundaries (TBs) within nanocrystalline grains has given scientists an oppo...